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EFFECTS OF SYSTEMIC ELEMENTS IN AUTONOMOUS VEHICLES PLATOONING

机译:系统元素在自动车辆排放中的影响

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摘要

Platooning, the early stage of autonomous driving, has already proved the possibility through actual driving experiments. However, to successfully use the platoon in real world, various algorithms related to the formation, maintenance, and release of platooning need to be investigated. In this study, the various systemic elements are examined with the situation of forming a platoon.To investigate the behavior of vehicles with various systemic elements when they form a platoon, a mathematical model-based optimization technique is applied with four different objective functions. The numerical example and sensitivity tests are performed to verify the effects of systemic elements for the behavior of the autonomous vehicles during the platoon forming stage.The operation trends of the autonomous vehicles can be categorized as three cases - i) stable situation, ii) complex situation and iii) impossible situation when they form a platoon. In case of stable situation, a rule-based simple method can be applied while a sophisticated control algorithm is significantly required for complex situation.This study proves the necessity of the sophisticated control algorithm for controlling of each autonomous vehicle separately and carefully by each time unit to achieve the platooning velocity and space for forming a platoon. The result of this study can be applied directly to develop a sophisticated control algorithm for further research.
机译:分列,自主驾驶的早期阶段已经证明了通过实际驾驶实验的可能性。然而,为了在现实世界中成功使用排,需要调查与地层,维护和释放的各种算法。在本研究中,通过形成排的情况来检查各种全系统元素。在形成一个分列时调查车辆的行为,应用基于数学模型的优化技术,具有四种不同的目标功能。执行数值和灵敏度测试以验证全身元素在排阶段的自主车辆行为的影响。自主车辆的操作趋势可以分类为三种情况 - i)稳定情况,ii)复杂情境和iii)在形成一排的情况下不可能的情况。在稳定情况下,可以应用基于规则的简单方法,而复杂的控制算法显着进行复杂的情况。本研究证明了通过每次单位单独和仔细控制每个自主车辆的复杂控制算法的必要性实现排速度和空间形成排。该研究的结果可以直接应用于开发一种复杂的控制算法,以进行进一步研究。

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